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A comparison between ultrasonic array beamforming and super resolution imaging algorithms for non-destructive evaluation

机译:超声阵列波束形成与超分辨率成像算法无损评估的比较

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In this paper the total focusing method, the so called gold standard in classical beamforming, is compared with the widely used time-reversal MUSIC super resolution technique in terms of its ability to resolve closely spaced scatterers in a solid. The algorithms are tested with simulated and experimental array data, each containing different noise levels. The performance of the algorithms is evaluated in terms of lateral resolution and sensitivity to noise. It is shown that for the weak noise situation (SNR > 20 dB), time-reversal MUSIC provides significantly enhanced lateral resolution when compared to the total focusing method, breaking the diffraction limit. However, for higher noise levels, the total focusing method is shown to be robust, whilst the performance of time-reversal MUSIC is degraded. The influence of multiple scattering on the imaging algorithms is also investigated and shown to be small.
机译:本文将总聚焦方法,即经典波束成形中所谓的金标准,与广泛使用的时间反转MUSIC超分辨率技术进行了比较,因为它具有解析固体中紧密间隔的散射体的能力。使用模拟和实验阵列数据对算法进行测试,每个阵列数据包含不同的噪声水平。根据横向分辨率和对噪声的敏感性来评估算法的性能。结果表明,对于弱噪声情况(SNR> 20 dB),与总聚焦方法相比,时间反转MUSIC可以显着提高横向分辨率,从而打破了衍射极限。但是,对于更高的噪声水平,总聚焦方法显示出鲁棒性,而时间反转MUSIC的性能却下降了。还研究了多重散射对成像算法的影响,并显示该影响​​很小。

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